Gliederung

Objective

The integration of ultrasound technology into neuronavigation systems has recently been the subject of reports by a number of groups. This paper describes our preliminary findings with regard to the integration of data derived from intraoperative duplex (color mode) and Doppler ultrasonography into a neuronavigational dataset. It was the aim of the study to investigate, (1) whether the intraoperative landmarking of vessels that are outlined with ultrasound technology is possible and, (2) whether such a technique might be of clinical interest for neurosurgical interventions.

Methods

The video image of an ultrasound plane (Toshiba, Powervision 6000 SSA-370A, Japan) was integrated into our neuronavigation system (VectorVision2, BrainLAB, Germany). For calibration of the ultrasound plane, an instrument adapter was fixed to the ultrasound probe and then calibrated using a special, predefined calibration phantom.

Results

The system supported a combination of the ultrasound plane functionality with the preoperatively-acquired neuronavigational data. The duplex and Doppler mode of the ultrasound system displayed the intraoperative vascular anatomy. Once a vessel was outlined during surgery, it could be landmarked by touching the navigation screen. These landmarks were integrated automatically into the neuronavigational dataset and could be used to provide intraoperative image updates of the vascular anatomy. This technique was successful in 45 out of 47 (95.7%) surgical interventions.

Conclusions

Both image-guided ultrasound and duplex-guided integration of vascular anatomy into the neuronavigational dataset is technically possible. In the future, this technology may provide useful intraoperative information during surgery of complex cerebral pathologies.